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The Analysis and Application of Decentralized Cyber Layer and Distributed Security Control for Interconnected Conurbation Grids under Catastrophic Cascading Failures

机译:灾难性级联故障下互连发生电网分布式网络层和分布式安全控制的分析与应用

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The cluster-featured conurbation cyber-physical power system (CPPS) interconnected with tie-lines facing the hazards from catastrophic cascading failures. To achieve better real-time performance, enhance the autonomous ability and improve resilience for the clustered conurbation CPPS, the decentralized cyber structure and the corresponding distributed security control strategy is proposed. Facing failures, the real-time security control is incorporated to mitigate cascading failures. The distributed security control problem is solved reliably based on alternating direction method of multipliers (ADMM). The system overall resilience degradation index(SORDI) adopted reflects the influence of cascading failures on both the topological integrity and operational security. The case study illustrates the decentralized cyber layer and distributed control will decrease the data congestion and enhance the autonomous ability for clusters, thus perform better effectiveness in mitigating the cascading failures, especially in topological perspective. With the proposed distributed security control strategy, curves of SORDI show more characteristics of second-order percolation transition and the cascading failure threshold increase, which is more efficient when the initial failure size is near the threshold values or step-type inflection point. Because of the feature of geological aggregation under cluster-based attack, the efficiency of the cluster-focused distributed security control strategy is more obvious than other nodes attack circumstances.
机译:群集特种的城市电流电力系统(CPP)与面向灾难性级联故障的危害的系带互连。为实现更好的实时性能,提高自治能力,提高集群传动消耗CPP的自主能力,提高了分散的网络结构和相应的分布式安全控制策略。面向故障,实时安全控制被纳入为缓解级联故障。基于乘法器(ADMM)的交替方向方法可靠地解决了分布式安全控制问题。所采用的系统总体抵抗力退化指数(SORDI)反映了级联失败对拓扑完整性和运营安全的影响。案例研究说明了分散的网络层和分布式控制将降低数据拥塞并增强群集的自主能力,从而在减轻级联故障方面进行更好的有效性,尤其是拓扑视角。通过拟议的分布式安全控制策略,SORDI的曲线显示出更多的二阶渗透过渡的特征,并且级联故障阈值增加,当初始故障尺寸靠近阈值或步进型拐点时,这更有效。由于基于群集的攻击下地质聚合的特征,聚焦的分布式安全控制策略的效率比其他节点攻击情况更加明显。

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